Simulation-Based Analysis of Ultra Thin-Body Double Gate Ferroelectric TFET for an Enhanced Electric Performance
Author:
Publisher
Springer Science and Business Media LLC
Subject
Electronic, Optical and Magnetic Materials
Link
https://link.springer.com/content/pdf/10.1007/s12633-021-01428-2.pdf
Reference39 articles.
1. Nirschl T, Fischer J, Fulde M, Bargagli-Stoffi A, Sterkel M, Sedlmeir J, Weber C, Heinrich R, Schaper U, Einfeld J, et al. (2006) Scaling properties of the tunneling field effect transistor (tfet): Device and circuit. Solid-state Electron 50(1):44–51
2. Jena B, Bhol K, Nanda U, Tayal S, Routray SR (2021) Performance analysis of ferroelectric gaa mosfet with metal grain work function variability. Silicon 1–8
3. Vanlalawmpuia K, Bhowmick B (2019) Linearity performance analysis due to lateral straggle variation in hetero-stacked tfet. Silicon 1–7
4. Sakib FI, Mullick FE, Shahnewaz S, Islam S, Hossain M (2019) Influence of device architecture on the performance of negative capacitance mfmis transistors. Semiconductor Science and Technology 35 (2):025005
5. Salahuddin S, Datta S (2008) Can the subthreshold swing in a classical fet be lowered below 60 mv/decade?. In: 2008 IEEE International Electron Devices Meeting. IEEE, pp 1–4
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